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隐丹参酮的构象可塑性:变性剂诱导的平衡去折叠过程中部分未折叠状态的积累

Conformational plasticity of cryptolepain: accumulation of partially unfolded states in denaturants induced equilibrium unfolding.

作者信息

Pande Monu, Dubey Vikash K, Sahu Vishal, Jagannadham Medicherla V

机构信息

Molecular Biology Unit, Institute of Medical Sciences, Banaras Hindu University, Varanasi, India.

出版信息

J Biotechnol. 2007 Sep 30;131(4):404-17. doi: 10.1016/j.jbiotec.2007.08.006. Epub 2007 Aug 7.

Abstract

pH and chemical denaturant dependent conformational changes of a serine protease cryptolepain from Cryptolepis buchanani are presented in this paper. Activity measurements, near UV, far UV CD, fluorescence emission spectroscopy, and ANS binding studies have been carried out to understand the folding mechanism of the protein in the presence of denaturants. pH and chemical denaturants have a marked effect on the stability, structure, and function of many globular proteins due to their ability to influence the electrostatic interactions. The preliminary biophysical study on cryptolepain shows that major elements of secondary structure are beta-sheets. Under neutral conditions the enzyme was stable in urea while GuHCl-induced equilibrium unfolding was cooperative. Cryptolepain shows little ANS binding even under neutral conditions due to more hydrophobicity of beta-sheets. Multiple intermediates were populated during the pH-induced unfolding of cryptolepain. Temperature-induced denaturation of cryptolepain in the molten globule like state is non-cooperative, contrary to the cooperativity seen with the native protein, suggesting the presence of two parts, possibly domains, in the molecular structure of cryptolepain, with different stability that unfolds in steps. Interestingly, the GuHCl-induced unfolding of A state (molten globule state) of cryptolepain is unique, as lower concentration of denaturant, not only induces structure but also facilitate transition from one molten globule like state (MG(1)) into another (MG(2)). The increase of pH drives the protein into alkaline denatured state characterized by the absence of any ANS binding. GuHCl- and urea-induced unfolding transition curves at pH 12.0 were non-coincidental indicating the presence of an intermediate in the unfolding pathway.

摘要

本文介绍了来自布氏白叶藤的丝氨酸蛋白酶隐丹参蛋白酶在pH值和化学变性剂作用下的构象变化。进行了活性测量、近紫外、远紫外圆二色光谱、荧光发射光谱和ANS结合研究,以了解该蛋白质在变性剂存在下的折叠机制。pH值和化学变性剂对许多球状蛋白质的稳定性、结构和功能有显著影响,因为它们能够影响静电相互作用。对隐丹参蛋白酶的初步生物物理研究表明,二级结构的主要元素是β-折叠。在中性条件下,该酶在尿素中稳定,而盐酸胍诱导的平衡去折叠是协同的。由于β-折叠的疏水性更强,即使在中性条件下,隐丹参蛋白酶与ANS的结合也很少。在隐丹参蛋白酶的pH诱导去折叠过程中出现了多个中间体。与天然蛋白质的协同性相反,隐丹参蛋白酶在类熔球状态下的温度诱导变性是非协同的,这表明在隐丹参蛋白酶的分子结构中存在两个部分,可能是结构域,具有不同的稳定性,会逐步展开。有趣的是,盐酸胍诱导的隐丹参蛋白酶A态(熔球态)的去折叠是独特的,因为较低浓度的变性剂不仅会诱导结构变化,还会促进从一种类熔球状态(MG(1))转变为另一种(MG(2))。pH值的升高会使蛋白质进入碱性变性状态,其特征是不存在任何与ANS的结合。在pH 12.0时,盐酸胍和尿素诱导的去折叠转变曲线不一致,表明在去折叠途径中存在一个中间体。

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